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Primo, Emiliano D.; Otero, Lisandro H.; Ruiz, Francisco; Klinke, Sebastián; Giordano, Walter – Biochemistry and Molecular Biology Education, 2018
The bacterial cell wall, a structural unit of peptidoglycan polymer comprised of glycan strands consisting of a repeating disaccharide motif [N-acetylglucosamine (NAG) and N-acetylmuramylpentapeptide (NAM pentapeptide)], encases bacteria and provides structural integrity and protection. Lysozymes are enzymes that break down the bacterial cell wall…
Descriptors: Cytology, Microbiology, Biochemistry, Science Instruction
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Hjalmarson, Margret A.; Moore, Tamara J.; delMas, Robert – Statistics Education Research Journal, 2011
Results of analysis of responses to a first-year undergraduate engineering activity are presented. Teams of students were asked to develop a procedure for quantifying the roughness of a surface at the nanoscale, which is typical of problems in Materials Engineering where qualities of a material need to be quantified. Thirty-five teams were…
Descriptors: College Freshmen, Engineering, Laboratories, Learning Activities
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Russo, Daniel V.; Burek, Michael J.; Iutzi, Ryan M.; Mracek, James A.; Hesjedal, Thorsten – European Journal of Physics, 2011
The teaching of the different aspects of a sensor system, with a focus on the involved nanotechnology, is a challenging, yet important task. We present the development of an electronic nose system that utilizes a nanoscale amperometric sensing mechanism for gas mixtures. The fabrication of the system makes use of a basic microfabrication facility,…
Descriptors: Olfactory Perception, Manufacturing, Technology, Fuels
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Brophy, Sean P.; Magana, Alejandra J.; Strachan, Alejandro – Advances in Engineering Education, 2013
We studied the use of online molecular dynamics simulations (MD) to enhance student abilities to understand the atomic processes governing plastic deformation in materials. The target population included a second-year undergraduate engineering course in the School of Materials Engineering at Purdue University. The objectives of the study were to…
Descriptors: Lecture Method, Undergraduate Study, Inquiry, Laboratories
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Castle, Karen J.; Rink, Stephanie M. – Journal of Chemical Education, 2010
A new physical chemistry laboratory experience has been designed for upper-level undergraduate chemistry majors. Students customize the first 10 weeks of their laboratory experience by choosing their own set of experiments (from a manual of choices) and setting their own laboratory schedule. There are several topics presented in the accompanying…
Descriptors: Majors (Students), Chemistry, Laboratories, College Science
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Hunter, David N.; Pickering, Shawn L.; Jia, Dongdong – European Journal of Physics, 2007
An undergraduate thin-film nanotechnology laboratory was designed. Nanocapacitors were fabricated on silicon substrates by sputter deposition. A mask was designed to form the shape of the capacitor and its electrodes. Thin metal layers of Au with a 80 nm thickness were deposited and used as two infinitely large parallel plates for a capacitor.…
Descriptors: Physics, Molecular Structure, Technology, Laboratories
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Green, Thomas K.; Lane, Charles A. – Journal of Chemical Education, 2006
A computational experiment is described for the organic chemistry laboratory that allows students to estimate the relative strengths of the intramolecular hydrogen bonds of usnic and isousnic acids, two related lichen secondary metabolites. Students first extract and purify usnic acid from common lichens and obtain [superscript 1]H NMR and IR…
Descriptors: Fundamental Concepts, Organic Chemistry, Laboratories, Scientific Concepts
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Rodriguez, F. – Journal of Chemical Education, 1990
Classroom demonstrations of selected mechanical properties of polymers are described that can be used to make quantitative measurements. Stiffness, strength, and extensibility are mechanical properties used to distinguish one polymer from another. (KR)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Educational Experiments
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Waldrop, Mitch – Chemical and Engineering News, 1979
Discusses the possibilities and the potentials of advancing the state of the art in computer chemistry. Explains that the fears will be extrapolating new compounds from existing ones, and predicting new activities based on chemical structure. (GA)
Descriptors: Chemical Bonding, Chemical Industry, Chemistry, Computer Assisted Instruction